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不依赖钙与界面佛波酯的结合会使蛋白激酶C在不存在酸性脂质的情况下与膜结合。

Calcium-independent binding to interfacial phorbol esters causes protein kinase C to associate with membranes in the absence of acidic lipids.

作者信息

Mosior M, Newton A C

机构信息

Department of Pharmacology, University of California at San Diego, La Jolla 92093-0640, USA.

出版信息

Biochemistry. 1996 Feb 6;35(5):1612-23. doi: 10.1021/bi952031q.

Abstract

The mechanism of interaction of phorbol esters with conventional protein kinase Cs was addressed by examining the direct binding of this class of activators to protein kinase C beta II. Binding measurements reveal that the major role of phorbol esters is to increase the affinity of protein kinase C for membranes by several orders of magnitude. The relative increase depends linearly on the mole fraction of phorbol esters in membranes, with the potency illustrated by the finding that 1 mol% phorbol 12-myristate 13-acetate (PMA) increases protein kinase C's membrane association by approximately 4 orders of magnitude. For comparison, diacylglycerol (DG), which also activates protein kinase C by increasing the enzyme's membrane affinity, is 2 orders of magnitude less effective than PMA in altering protein kinase C's membrane affinity. The remarkably high-affinity interaction with phorbol esters allowed us to measure the direct binding of protein kinase C to PMA in neutral membranes and, thus, to evaluate the effect of Ca2+ on the phorbol ester interaction in the absence of Ca2+ effects on the enzyme's interaction with acidic lipids. Changing the Ca2+ concentration over 5 orders of magnitude had no effect on the direct interaction of protein kinase C with PMA immobilized in phosphatidylcholine membranes. Thus, the Ca(2+)-binding site for membrane association and the phorbol ester-binding site do not interact allosterically. Lastly, a method that does not have the limitations of the Scatchard plot for analysis of amphitropic proteins was used to determine the dissociation constant of protein kinase C from phorbol esters: expressed relative to membrane lipids, the dissociation constant is 1.5 x 10(-5) mol %. In summary, our data reveal that (1) the direct binding of protein kinase C to phorbol esters, in the absence of interactions with acidic lipids, provides a major contribution to the free energy change involved in the association of protein kinase C with membranes and (2) this interaction is not regulated by Ca2+.

摘要

通过检测这类激活剂与蛋白激酶CβII的直接结合,研究了佛波酯与传统蛋白激酶C的相互作用机制。结合测量结果表明,佛波酯的主要作用是将蛋白激酶C对膜的亲和力提高几个数量级。相对增加量与膜中佛波酯的摩尔分数呈线性关系,1 mol%的佛波醇12 -肉豆蔻酸酯13 -乙酸酯(PMA)可使蛋白激酶C与膜的结合增加约4个数量级,这一发现说明了其效力。相比之下,二酰基甘油(DG)也通过增加酶对膜的亲和力来激活蛋白激酶C,但在改变蛋白激酶C与膜的亲和力方面,其效力比PMA低2个数量级。与佛波酯的显著高亲和力相互作用使我们能够测量中性膜中蛋白激酶C与PMA的直接结合,从而在不存在Ca2 +对酶与酸性脂质相互作用影响的情况下,评估Ca2 +对佛波酯相互作用的影响。将Ca2 +浓度在5个数量级范围内变化,对固定在磷脂酰胆碱膜中的PMA与蛋白激酶C的直接相互作用没有影响。因此,膜结合的Ca(2 +)结合位点与佛波酯结合位点不存在变构相互作用。最后,使用一种没有用于分析兼性蛋白的Scatchard图局限性的方法来确定蛋白激酶C与佛波酯的解离常数:相对于膜脂表示,解离常数为1.5×10(-5) mol %。总之,我们的数据表明:(1)在不存在与酸性脂质相互作用的情况下,蛋白激酶C与佛波酯的直接结合对蛋白激酶C与膜结合所涉及的自由能变化有主要贡献;(2)这种相互作用不受Ca2 +调节。

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